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Melatonin reverses urinary system and aorta damage in the rat due to chronic nicotine administration
Göksel Sener1, Caner Kapucu, Kübra Paskaloglu
1Department of Pharmacology, School of Pharmacy, Marmara University, Istanbul, Turkey. gokselsener@hotmail.com
Abstract:
We have evaluated the changes in contractile activity and oxidant damage of corpus cavernosum, urinary bladder, kidney and aorta after chronic nicotine administration in rats. The effects of melatonin on these parameters were investigated also. Male Wistar albino rats were injected intraperitoneally with nicotine hydrogen bitartrate (0.6 mg kg(-1) daily for 21 days) or saline. Melatonin (10 mg kg(-1), i.p.) was administered either alone or with nicotine injections. Corpus cavernosum, bladder and aorta were used for contractility studies, or stored with kidneys for the measurement of malondialdehyde and glutathione levels. Corpus cavernosum, bladder, and aorta samples were examined histologically and the extent of microscopic tissue damage was scored. In the nicotine-treated group, the contraction of corpus cavernosum, bladder and aorta samples and the relaxation of corporeal and aorta tissues decreased significantly compared with controls. However, melatonin treatment restored these responses. In the nicotine-treated group, there was a significant increase in the malondialdehyde levels of the corporeal tissue, bladder, kidney and aorta, with marked reductions in glutathione levels compared with controls. Melatonin treatment reversed these effects also. Melatonin administration to nicotine-treated animals caused a marked reduction in the microscopic damage of the tissues compared with those of the untreated group. In this study, nicotine-induced dysfunction of the corpus cavernosum, bladder and aorta of rats was reversed by melatonin treatment. Moreover, melatonin, as an antioxidant, abolished elevation in lipid peroxidation products, and reduction in the endogenous antioxidant glutathione, and protected the tissues from severe damage due to nicotine exposure.
Insights
Chronic nicotine harms rat corpus cavernosum, bladder, and aorta function and increases oxidant damage. Melatonin treatment effectively reversed these nicotine-induced negative effects, acting as a potent antioxidant.
Area of Science:
- Pharmacology
- Toxicology
- Physiology
Background:
- Nicotine administration can induce oxidative stress and damage in various tissues.
- The corpus cavernosum, urinary bladder, and aorta are susceptible to nicotine-induced dysfunction.
- Melatonin is a known antioxidant with potential protective effects against tissue damage.
Purpose of the Study:
- To evaluate the impact of chronic nicotine exposure on the contractile activity and oxidant damage of rat corpus cavernosum, urinary bladder, kidney, and aorta.
- To investigate the potential protective effects of melatonin against nicotine-induced tissue damage and dysfunction.
Main Methods:
- Male Wistar albino rats were administered nicotine (0.6 mg/kg daily for 21 days) or saline.
- Melatonin (10 mg/kg) was administered alone or concurrently with nicotine.
- Contractility studies, malondialdehyde and glutathione level measurements, and histological examinations were performed on corpus cavernosum, bladder, aorta, and kidney tissues.
Main Results:
- Nicotine significantly decreased contractile responses and increased malondialdehyde (lipid peroxidation) while reducing glutathione (antioxidant) in the studied tissues.
- Melatonin treatment reversed the contractile dysfunction and normalized oxidant/antioxidant levels.
- Histological analysis showed melatonin reduced nicotine-induced microscopic tissue damage.
Conclusions:
- Chronic nicotine administration leads to significant functional and oxidative impairment in the corpus cavernosum, bladder, and aorta.
- Melatonin effectively reverses nicotine-induced dysfunction and protects tissues by mitigating oxidative stress.
- Melatonin demonstrates significant antioxidant properties, protecting against nicotine-induced lipid peroxidation and tissue damage.
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